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A common control signal and a ballistic stage can explain the control of coordinated eye-hand movements

机译:通用的控制信号和弹道平台可以解释协调的眼手运动

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摘要

Voluntary control has been extensively studied in the context of eye and hand movements made in isolation, yet little is known about the nature of control during eye-hand coordination. We probed this with a redirect task. Here subjects had to make reaching/pointing movements accompanied by coordinated eye movements but had to change their plans when the target occasionally changed its position during some trials. Using a race model framework, we found that separate effector-specific mechanisms may be recruited to control eye and hand movements when executed in isolation but when the same effectors are coordinated a unitary mechanism to control coordinated eye-hand movements is employed. Specifically, we found that performance curves were distinct for the eye and hand when these movements were executed in isolation but were comparable when they were executed together. Second, the time to switch motor plans, called the target step reaction time, was different in the eye-alone and hand-alone conditions but was similar in the coordinated condition under assumption of a ballistic stage of ∼40 ms, on average. Interestingly, the existence of this ballistic stage could predict the extent of eye-hand dissociations seen in individual subjects. Finally, when subjects were explicitly instructed to control specifically a single effector (eye or hand), redirecting one effector had a strong effect on the performance of the other effector. Taken together, these results suggest that a common control signal and a ballistic stage are recruited when coordinated eye-hand movement plans require alteration.
机译:在孤立地进行眼睛和手运动的情况下,已经对自愿控制进行了广泛的研究,但对眼-手协调过程中控制的性质知之甚少。我们通过重定向任务对此进行了探讨。在这种情况下,受试者必须进行举手/指点动作并伴随协调的眼球动作,但是当目标在某些试验中偶尔改变其位置时,他们必须更改其计划。使用种族模型框架,我们发现当单独执行时,可能会募集单独的特定于效应器的机制来控制眼睛和手的运动,但是当协调相同的效应器时,会采用统一的机制来控制协调的眼-手的运动。具体来说,我们发现,当这些动作单独执行时,眼睛和手的性能曲线是不同的,但是当它们一起执行时,它们的性能曲线是可比较的。其次,切换运动计划的时间(称为目标阶跃反应时间)在单眼和手持条件下均不同,但在协调条件下(假设弹道阶段平均约为40 ms)则相似。有趣的是,该弹道阶段的存在可以预测个体受试者眼手分离的程度。最后,当明确指示对象控制单个效应器(眼睛或手)时,重定向一个效应器会对另一个效应器的性能产生强烈影响。综上所述,这些结果表明,当协调的眼手运动计划需要改变时,会招募一个共同的控制信号和一个弹道阶段。

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